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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >A single van der pol wake oscillator model for coupled cross-flow and in-line vortex-induced vibrations
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A single van der pol wake oscillator model for coupled cross-flow and in-line vortex-induced vibrations

机译:用于耦合交叉流量和在线涡旋诱导振动的单个范德隆唤醒振荡器模型

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摘要

In this study a new wake oscillator model is proposed to describe the coupled cross-flow and in-line vortex-induced vibrations of an elastically supported rigid cylinder. Different from many other studies where two wake oscillators have been applied, the current model uses only one wake oscillator coupled to both cross-flow and inline motions. The new model is based on the van der Pol oscillator with the classic acceleration coupling between the wake and cross-flow motion, while the in-line motion is coupled with the wake variable in a nonlinear manner. The predictions of this new model are compared with the existing experimental data and shown to be in good agreement. In addition to the conventional lock-in range that corresponds to reduced velocities between 5 and 8, another lock-in is predicted around reduced velocity of 2.5 due to the in-line vibration. Most importantly, the new model is proved to be able to predict the appearance of the `super-upper' branch at small mass ratios without changing the tuning parameters. The limitations of the model associated with unrealistic predictions of free vibrations with very small mass ratios and those of forced in-line vibrations at high frequencies are also discussed along with a possible remedy.
机译:在该研究中,提出了一种新的唤醒振荡器模型来描述弹性支撑的刚性圆柱的耦合的横流和在线涡流诱导的振动。不同于许多其他唤醒振荡器的研究,目前的模型仅使用一个唤醒振荡器,耦合到交叉流动和内联运动。新模型基于van der POL振荡器,具有唤醒和交叉流动之间的经典加速耦合,而在线运动以非线性方式与唤醒变量耦合。将该新模型的预测与现有的实验数据进行比较,并符合良好的一致性。除了对应于5至8之间的速度的传统锁定范围之外,由于在线振动,预测另一个锁定率为2.5的速度。最重要的是,证明新模型能够在不改变调谐参数的情况下以小质量比例预测“超高”分支的外观。还讨论了与具有非常小的质量比的自由振动的不切实际预测与高频下的强制在线振动相关的模型的局限性以及可能的补救措施。

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